辐射冷却
材料科学
发射率
纳米孔
辐射传输
瓦片
红外窗口
陶瓷
热发射率
光学
光电子学
复合材料
红外线的
热力学
纳米技术
物理
梁(结构)
作者
Xia Huang,Na Li,Junfeng Wang,Defang Liu,Jian Xu,Zhijie Zhang,Minlin Zhong
标识
DOI:10.1021/acsami.9b14615
摘要
Objects can radiate emission of heat to outer empty space (3 K) through an atmospheric window (8-13 μm), resulting in a possibility for radiative cooling. Multilayer film stacking designs and complex nanophoton coolers have been reported for radiative cooling. Here, we have found that single nanoporous MgHPO4·1.2H2O powder has a high reflectance of 92.20% in the solar spectral region of 0.3-2.5 μm and a high emissivity of 0.94 in the atmospheric window of 8-13 μm. The powder was film-coated on ceramic tiles for temperature and cooling power tests on Al foil. The test results showed that the MgHPO4·1.2H2O coating on the ceramic tile could achieves a daytime radiative cooling of 4.1 °C below the ambient air temperature and a nighttime radiative cooling of 7.6 °C. The average cooling power reaches 78.18 W/m2. Such a simple and low-cost single nanoporous MgHPO4·1.2H2O powder material offers a novel option for large-scale applications of radiative cooling.
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